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Genetic variation among isolates of Sarcocystis neurona, the agent of protozoal myeloencephalitis, as revealed by amplified fragment length polymorphism markers.通过扩增片段长度多态性标记揭示的原虫性脑脊髓炎病原体——犬新孢子虫分离株之间的遗传变异。
Infect Immun. 2006 Jun;74(6):3448-54. doi: 10.1128/IAI.01215-05.
2
Brown-headed cowbirds (Molothrus ater) harbor Sarcocystis neurona and act as intermediate hosts.褐头牛鹂(Molothrus ater)携带犬新孢子虫并作为中间宿主。
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Evidence to support horses as natural intermediate hosts for Sarcocystis neurona.支持马作为肉孢子虫天然中间宿主的证据。
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Sarcocystis falcatula from passerine and psittacine birds: synonymy with Sarcocystis neurona, agent of equine protozoal myeloencephalitis.来自雀形目和鹦鹉目鸟类的镰状肉孢子虫:与马原虫性脑脊髓炎病原体神经肉孢子虫同义。
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Multiple DNA markers differentiate Sarcocystis neurona and Sarcocystis falcatula.多种DNA标记可区分犬新孢子虫和猫肉孢子虫。
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Characterization of a Sarcocystis neurona isolate from a Missouri horse with equine protozoal myeloencephalitis.从一匹患有马属动物原虫性脑脊髓炎的密苏里州马匹中分离出的纳氏肉孢子虫菌株的特性研究。
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Phylogenetic relationships of Sarcocystis neurona of horses and opossums to other cyst-forming coccidia deduced from SSU rRNA gene sequences.根据小亚基核糖体RNA(SSU rRNA)基因序列推断马和负鼠的神经肉孢子虫与其他形成包囊的球虫之间的系统发育关系。
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6
Limited genetic diversity among Sarcocystis neurona strains infecting southern sea otters precludes distinction between marine and terrestrial isolates.感染南象海豹的 Sarcocystis neurona 菌株遗传多样性有限,无法区分海生和陆生分离株。
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Phylogenetic relationships of Sarcocystis neurona of horses and opossums to other cyst-forming coccidia deduced from SSU rRNA gene sequences.根据小亚基核糖体RNA(SSU rRNA)基因序列推断马和负鼠的神经肉孢子虫与其他形成包囊的球虫之间的系统发育关系。
Parasitol Res. 2005 Nov;97(5):345-57. doi: 10.1007/s00436-005-1396-5. Epub 2005 Aug 16.
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Phylogenetic congruence of Sarcocystis neurona Dubey et al., 1991 (Apicomplexa: Sarcocystidae) in the United States based on sequence analysis and restriction fragment length polymorphism (RFLP).基于序列分析和限制性片段长度多态性(RFLP)对美国1991年杜贝等人发现的犬新孢子虫(顶复门:肉孢子虫科)进行系统发育一致性研究
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Evidence to support horses as natural intermediate hosts for Sarcocystis neurona.支持马作为肉孢子虫天然中间宿主的证据。
Vet Parasitol. 2005 Oct 10;133(1):27-36. doi: 10.1016/j.vetpar.2005.05.016.
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Sarcocystis neurona major surface antigen gene 1 (SAG1) shows evidence of having evolved under positive selection pressure.犬新孢子虫主要表面抗原基因1(SAG1)显示出在正选择压力下进化的证据。
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Prevalence of Sarcocystis species sporocysts in Northern Virginia opossums (Didelphis virginiana).弗吉尼亚北部负鼠(弗吉尼亚负鼠)中肉孢子虫属孢子囊的流行情况。
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Purification of Sarcocystis neurona sporocysts from opossum (Didelphis virginiana) using potassium bromide discontinuous density gradient centrifugation.使用溴化钾不连续密度梯度离心法从负鼠(弗吉尼亚负鼠)中纯化肉孢子虫神经元孢子囊。
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通过扩增片段长度多态性标记揭示的原虫性脑脊髓炎病原体——犬新孢子虫分离株之间的遗传变异。

Genetic variation among isolates of Sarcocystis neurona, the agent of protozoal myeloencephalitis, as revealed by amplified fragment length polymorphism markers.

作者信息

Elsheikha H M, Schott H C, Mansfield L S

机构信息

Department of Large Animal Clinical Sciences, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Infect Immun. 2006 Jun;74(6):3448-54. doi: 10.1128/IAI.01215-05.

DOI:10.1128/IAI.01215-05
PMID:16714575
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1479295/
Abstract

Sarcocystis neurona causes serious neurological disease in horses and other vertebrates in the Americas. Based on epidemiological data, this parasite has recently emerged. Here, the genetic diversity of Sarcocystis neurona was evaluated using the amplified fragment length polymorphism (AFLP) method. Fifteen S. neurona taxa from different regions collected over the last 10 years were used; six isolates were from clinically diseased horses, eight isolates were from wild-caught opossums (Didelphis virginiana), and one isolate was from a cowbird (Molothrus ater). Additionally, four outgroup taxa were also fingerprinted. Nine primer pairs were used to generate AFLP patterns, with a total number of amplified fragments ranging from 30 to 60, depending on the isolate and primers tested. Based on the presence/absence of amplified AFLP fragments and pairwise similarity values, all the S. neurona isolates tested were clustered in one monophyletic group. No significant correlation could be found between genomic similarity and host origin of the S. neurona isolates. AFLP revealed significant intraspecific genetic variations, and S. neurona appeared as a highly variable species. Furthermore, linkage disequilibrium analysis suggested that S. neurona populations within Michigan have an intermediate type of population structure that includes characteristics of both clonal and panamictic population structures. AFLP is a reliable molecular technique that has provided one of the most informative approaches to ascertain phylogenetic relationships in S. neurona and its closest relatives, allowing them to be clustered by relative similarity using band matching and unweighted pair group method with arithmetic mean analysis, which may be applicable to other related protozoal species.

摘要

肉孢子虫可导致美洲马匹和其他脊椎动物患上严重的神经系统疾病。根据流行病学数据,这种寄生虫最近才出现。在此,使用扩增片段长度多态性(AFLP)方法评估了肉孢子虫的遗传多样性。使用了过去10年从不同地区收集的15个肉孢子虫分类单元;6个分离株来自临床患病马匹,8个分离株来自野生负鼠(弗吉尼亚负鼠),1个分离株来自褐头牛鹂。此外,还对4个外群分类单元进行了指纹分析。使用9对引物生成AFLP图谱,根据所测试的分离株和引物,扩增片段总数在30至60之间。根据扩增的AFLP片段的有无以及成对相似性值,所有测试的肉孢子虫分离株都聚在一个单系类群中。肉孢子虫分离株的基因组相似性与其宿主来源之间未发现显著相关性。AFLP揭示了显著的种内遗传变异,肉孢子虫表现为一个高度可变的物种。此外,连锁不平衡分析表明,密歇根州境内的肉孢子虫种群具有中间类型的种群结构,兼具克隆种群结构和随机交配种群结构的特征。AFLP是一种可靠的分子技术,为确定肉孢子虫及其近缘种之间的系统发育关系提供了最具信息量的方法之一,通过条带匹配和算术平均的非加权配对组方法,根据相对相似性将它们聚类,这可能适用于其他相关原生动物物种。